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Experimental Measurements in the Field of Prestressing Force Monitoring

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[1] BONOPERA, M. – KUO-CHUN, CH. – ZHENG-KUAN, L.: State-of-the-Art Review on Determining Prestress Losses in Prestressed Concrete Girders. Applied Sciences, 10, 2020, No. 20, 7257, https://doi.org/10.3390/app10207257.10.3390/app10207257 Search in Google Scholar

[2] BUJŇÁKOVÁ, P.: Anchorage System in Old Post-tensioned Precast Bridges. Civil and Environmental Engineering, Vol. 16, Iss. 2, 2020, pp. 379-387, https://doi.org/10.2478/cee-2020-0038.10.2478/cee-2020-0038 Search in Google Scholar

[3] KRAĽOVANEC, J. – MORAVČÍK, M. – BUJŇÁKOVÁ, P. – JOŠT, J.: Indirect Determination of Residual Prestressing Force in Post-Tensioned Concrete Beam. Materials, 14, 2021, No. 6, 1338, https://doi.org/10.3390/ma14061338.10.3390/ma14061338 Search in Google Scholar

[4] KRAĽOVANEC, J. – MORAVČÍK, M. – BAHLEDA, F. – PROKOP, J.: Experimental and Numerical Study of Saw-cut Method on Concrete Beams. FIB Symposium 2021, Concrete Structures: New Trends for Eco-Efficiency and Performance, held online from Lisbon, Portugal, June 14–16. Search in Google Scholar

[5] KOTEŠ, P. – VIČAN, J. – NIKOLIČ, R.: Evaluation of Elder and Historical Bridges. 9th International Conference Bridges in Danube Basin 2016, BDB 2016. Procedia Engineering, Vol. 156, 2016, pp. 186-190, https://doi.org/10.1016/j.proeng.2016.08.285.10.1016/j.proeng.2016.08.285 Search in Google Scholar

[6] PONECHAL, R. – KOTEŠ, P. – MICHÁLKOVÁ, D. – KRAĽOVANEC, J. – BAHLEDA, F.: Effect of Water Condensate on Corrosion of Wires in Ungrouted Ducts. Materials, 2021, 14, 7765, https://doi.org/10.3390/ma14247765.10.3390/ma14247765 Search in Google Scholar

[7] VIČAN, J. – GOCÁL, J. – MELIŠ, B. – KOTEŠ, P. – KOTULA, P.: Real Behaviour and Remaining Lifetime of Bridge Structures. Communications - Scientific Letters of the University of Zilina, 10(2), 2008, pp. 30-37. Retrieved from http://komunikacie.uniza.sk/index.php/communications/article/view/1042.10.26552/com.C.2008.2.30-37 Search in Google Scholar

[8] KRAĽOVANEC, J. – MORAVČÍK, M. – JOŠT, J.: Analysis of Prestressing in Precast Prestressed Concrete Beams. Civil and Environmental Engineering, Vol. 17, Iss. 1, 2021, pp. 184-191, DOI: 10.2478/cee-2021-0019. Open DOISearch in Google Scholar

[9] BAGGE, N. – NILIMAA, J. – ELFGREN, L.: In-situ Methods to Determine Residual Prestress Forces in Concrete Bridges. Engineering Structures, 2017, https://doi.org/10.1016/j.engstruct.2016.12.059. Search in Google Scholar

[10] PASTOREK, F. – DECKÝ, M. – NESLUŠAN, M. – PITOŇÁK, M.: Usage of Barkhausen Noise for Assessment of Corrosion Damage on Different Low Alloyed Steels. Appl. Sci. 2021, 11, 10646, https://doi.org/10.3390/app112210646. Search in Google Scholar

[11] VARGA, R.: Domain Walls and Their Dynamics. Košice, Slovakia, 2014, Pavol Jozef Šafárik University. Search in Google Scholar

[12] ABDEL-JABER, H. – GLISIC, B.: Monitoring of prestressing forces in prestressed concrete structures - an overview. Struct. Control Health Monit., 2019, 26, e2374, https://doi.org/10.1002/stc.2374. Search in Google Scholar